Jim N. McElwaine
Affiliations: | Durham University, Durham, England, United Kingdom |
Area:
Fluid Dynamics, Granular Physics, Magnetohydrodynamics, Geophysical Fluid Dynamics, Quantum MechanicsGoogle:
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Publications
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Haas Td, McArdell BW, Conway SJ, et al. (2019) Initiation and Flow Conditions of Contemporary Flows in Martian Gullies. Journal of Geophysical Research. 124: 2246-2271 |
Sylvest ME, Dixon JC, Conway SJ, et al. (2019) CO2 sublimation in Martian gullies: laboratory experiments at varied slope angle and regolith grain sizes Geological Society, London, Special Publications. 467: 343-371 |
Köhler A, Fischer J, Scandroglio R, et al. (2018) Cold-to-warm flow regime transition in snow avalanches The Cryosphere. 12: 3759-3774 |
Sovilla B, McElwaine J, Köhler A. (2018) The intermittency regions of powder snow avalanches Journal of Geophysical Research. 123: 2525-2545 |
Issler D, Jenkins JT, McELWAINE JN. (2018) Comments on avalanche flow models based on the concept of random kinetic energy Journal of Glaciology. 64: 148-164 |
Bray VJ, Atwood-Stone C, Neish CD, et al. (2018) Lobate impact melt flows within the extended ejecta blanket of Pierazzo crater Icarus. 301: 26-36 |
Balmforth NJ, McElwaine JN. (2018) From episodic avalanching to continuous flow in a granular drum Granular Matter. 20 |
Köhler A, McElwaine JN, Sovilla B. (2018) GEODAR Data and the Flow Regimes of Snow Avalanches Journal of Geophysical Research. 123: 1272-1294 |
Dundas CM, McEwen AS, Chojnacki M, et al. (2017) Granular flows at recurring slope lineae on Mars indicate a limited role for liquid water Nature Geoscience. 10: 903-907 |
DeGiuli E, McElwaine JN, Wyart M. (2016) Phase diagram for inertial granular flows. Physical Review. E. 94: 012904 |